<div><p>The interactions of biological macromolecules with nanoparticles underlie a wide variety of current and future applications in the fields of biotechnology, medicine and bioremediation. The same interactions are also responsible for mediating potential biohazards of nanomaterials. Some applications require that proteins adsorb to the nanomaterial and that the protein resists or undergoes structural rearrangements. This article presents a screening method for detecting nanoparticle-protein partners and conformational changes on time scales ranging from milliseconds to days. Mobile fluorophores are used as reporters to study the interaction between proteins and nanoparticles in a high-throughput manner in multi-well format. Furthermore...
Nanoparticle (NP) colloidal stability plays a crucial role in biomedical application not only for hu...
Due to their small size, nanoparticles have distinct properties compared with the bulk form of the s...
Nanomedicine and the use of nanoparticles (NPs) are growing like never before. It is therefore impor...
The interactions of biological macromolecules with nanoparticles underlie a wide variety of current ...
The interactions of biological macromolecules with nanoparticles underlie a wide variety of current ...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
Interaction of nanoparticles with proteins is the basis of nanoparticle bio-reactivity. This interac...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
Protein aggregation is a phenomenon widespread in all organisms, that responds to a variety of exter...
Within living organisms, there exists a large variety of macromolecular interactions, such as protei...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Nanoparticle (NP) colloidal stability plays a crucial role in biomedical application not only for hu...
Due to their small size, nanoparticles have distinct properties compared with the bulk form of the s...
Nanomedicine and the use of nanoparticles (NPs) are growing like never before. It is therefore impor...
The interactions of biological macromolecules with nanoparticles underlie a wide variety of current ...
The interactions of biological macromolecules with nanoparticles underlie a wide variety of current ...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
Interaction of nanoparticles with proteins is the basis of nanoparticle bio-reactivity. This interac...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
A rapid, high throughput fluorescence assay was designed to screen interactions between proteins and...
In recent years, the fabrication of nanomaterials and exploration of their properties have attracted...
Protein aggregation is a phenomenon widespread in all organisms, that responds to a variety of exter...
Within living organisms, there exists a large variety of macromolecular interactions, such as protei...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Proteins and nanoparticles (NPs) provide a promising platform for supramolecular interaction. We are...
Nanoparticle (NP) colloidal stability plays a crucial role in biomedical application not only for hu...
Due to their small size, nanoparticles have distinct properties compared with the bulk form of the s...
Nanomedicine and the use of nanoparticles (NPs) are growing like never before. It is therefore impor...